首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure transformation and grain refinement during non-equilibrium solidification of a highly undercooled alloy system
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Microstructure transformation and grain refinement during non-equilibrium solidification of a highly undercooled alloy system

机译:高度过冷合金系统非平衡凝固过程中的微观结构转变和晶粒细化

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The rapid solidification of Ni-Cu alloy was systematically studied. It was found that the solidification interface became smoother and more random with the increase of undercooling. The results show that there are two grain refinements at the small and large undercooling, and the undercooling required for the second grain refinement increases with the increase of Cu mass fraction. In the study of grain refinement, it is found that there is no high-strength texture at large undercooling, and there are high-density high-angle grain boundaries, twin boundaries and a large number of undistorted grains, which preliminarily proves the occurrence of recrystallization. Some dislocations exist in microstructure at large undercooling, but the microhardness decreases sharply, which indicates that the stress accumulated during rapid solidification causes plastic strains and promotes recrystallization. It is further proved that the grain refinement at large undercooling is caused by stress-induced recrystallization. (C) 2021 Elsevier B.V. All rights reserved.
机译:对镍铜合金的快速凝固进行了系统研究。结果表明,随着过冷度的增加,凝固界面变得更加光滑和随机。结果表明,在小过冷度和大过冷度下,晶粒有两次细化,二次细化所需的过冷度随Cu质量分数的增加而增加。在晶粒细化研究中,发现在大过冷度下不存在高强度织构,存在高密度高角度晶界、孪晶界和大量未变形晶粒,初步证明了再结晶的发生。在大过冷度下,显微组织中存在一些位错,但显微硬度急剧下降,这表明快速凝固过程中积累的应力导致塑性应变,并促进再结晶。进一步证明了大过冷度下的晶粒细化是由应力诱导再结晶引起的。(c)2021爱思唯尔B.V.保留所有权利。

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